双酚a对Eudrilus eugenae (Kinberg, 1867)在不同时间间隔将茶渣转化为蚯蚓堆肥的影响

A. Bhuvaneswari, K. Kalaivanan, S. Durairaj, G. Selladurai
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引用次数: 3

摘要

摘要:蚯蚓堆肥已成为最卫生、最经济的垃圾处理方法。由于蚯蚓技术被认为是最好的方法之一,因此本研究以大量可利用的茶叶废弃物为研究对象,研究了原生原生线虫将茶叶废弃物转化为蚯蚓堆肥对茶叶废弃物的处理效率。在第15天和第30天,研究了原生朱氏菌将茶叶废弃物转化为堆肥的效率,并对矿物N、P、K和Fe、Mn、Zn、Cu进行了分析。同时对蚯蚓的物理特性进行了分析,以了解蚯蚓维持土壤物理状态的效率。在第15天和第30天,宏量和微量元素含量显著增加。记录了对照和实验堆肥的FTIR光谱。注意到光谱的变化。实验光谱由富氮峰组成。控制系统无N-H拉伸峰,而茶渣光谱有N-H拉伸峰。双酚a的峰值导致大量的氢基团,即混合物比控制系统有更多的水分。茶渣中的黄酮类化合物在同一体系中也具有OH基团。为了了解解剖结构,研究了蚯蚓不同部位的组织学。经检测的蚯蚓前部的组织学显示,角质层损伤不大。背侧和腹侧血管大量受损。阴蒂区对照动物脏器结构完整。体腔和血管清晰可见。在实验动物中,阴蒂区域有轻微的解剖改变。色素细胞在双酚a处理废水中占有重要地位。在一些地方,圆形肌肉组织紊乱。中部角质层和表皮完整。本研究揭示了双酚对茶叶废弃物转化为堆肥的影响。
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Effect of Bisphenol-A on the Bioconversion of Tea Waste into Vermicompost by Eudrilus Eugeniae (Kinberg, 1867) at Different Intervals
Abstract: Vermicompost has been appropriate alternative for the best hygienic and cost effective disposal of wastes. Since the vermitechnology is considered as one of the best methods, the largely available tea waste was taken to the present work to study the efficiency the Eudrilus eugeniae in the management of such waste by converting it into vermicompost. The efficiency of the conversion of Tea waste into compost in the form minerals N, P, K and Fe, Mn, Zn, Cu by Eudrilus eugeniae has been analyzed on 15 th and 30 th days. Physical characteristic were also analyzed simultaneously to understand the efficiency of earthworm in maintaining the physical status of the soil. Macro and micro nutrients were increased significantly on 15 th and 30 th days. FTIR spectrum was recorded for the control and experimental compost. The variation of spectrum was noted. The Spectrum of experimental consisted of nitrogen rich peak. The control system has no N-H stretching peak whereas tea waste spectra has N-H stretching peak. The peak at Bisphenol-A leads to large number of hydrogen group i.e., the mixture has more moisture than the control system. The tea waste has flavonoids which also exhibit the OH group at the same system. To understand the anatomy, histology of the different parts of the earthworm was studied. Histology of the tested anterior region of Earthworm reveals that the cuticle is not much damaged. The dorsal and ventral blood vessel ruined largely. The control animal of clitellar region showed intact structure of internal organs. The coelom and Blood vessels are well marked. In the experimental animal, the clitellar region showed slight modification of the anatomy. The pigment cells are prominent in the waste treatment with Bisphenol-A. In some places, the circular muscles are disorganized. In middle region, the cuticle and the epidermis are intact. The study reveals the impact of the Bisphenol on the conversion of tea waste into compost.
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